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大跨度钢-混混合变截面连续箱梁桥悬臂施工与控制
作者:
作者单位:

中交第一航务工程有限公司

中图分类号:

U445.4

基金项目:

交通运输行业重点科技清单项目(编号:2021-MS1-047);陕西省交通运输厅2022年度交通科研项目(编号:22-30K)


Cantilever Construction and Control of Long-span Steel-Concrete Hybrid Continuous Box Girder Bridge with Variable Sections
Author:
Affiliation:

CCCC First Harbor Engineering Co., Ltd

Fund Project:

Transportation Industry Key Technology List Items(Number:2021-MS1-047);2022 Transportation Research Project of Shaanxi Provincial Transportation Department(Number:22-30k)

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    摘要:

    为解决特殊环境下钢-混混合变截面连续箱梁桥中跨钢箱梁难以整体提升施工的难题,指导钢-混混合变截面连续箱梁桥的施工和设计,通过类比分析不同施工方法采取的外部措施和对结构成桥状态的影响,对小节段悬臂拼装法的施工影响关键因素和控制要点进行了理论研究和实桥计算。结果表明:施工临时荷载和临时体外预应力的作用效应不会因体系转换后的拆除而抵消,会影响结构成桥状态;小节段悬臂拼装法可以通过施工措施达到整体提升法所对应的成桥状态,采用下部体外预应力调整合龙口状态的作用效率是上部体外预应力的2.4倍,且能大幅降低钢梁轴力;小节段悬臂拼装法的吊机重量对结构内力影响较整体提升法更大,形成一套针对此类桥型考虑施工过程的流程化设计指导,提出在合龙口设计临时铰接装置来消除桥面吊机对钢梁根部弯矩的不利影响。

    Abstract:

    In order to solve the overall lifting difficulty of mid-span steel beam in the steel-concrete hybrid continuous box girder bridge with variable sections under special environmental conditions, and to provide guidance for the construction and design of such bridges. This study analyzed the external measures adopted by different construction methods and their impacts on the bridge-building state of the structure. It also studied key factors and control points for sub-segment cantilever assembly method in both theoretical research and real bridge calculations. The results indicate that the effect of the temporary load and the temporary external prestressing will not be offset by the demolition after the system transformation, and will affect the structure in the bridge-building state. Additionally, it is found that the sub-segment cantilever assembly method can achieve the bridge bending moment corresponding to the overall lifting method by construction measures, and the external prestressing at the lower part can significantly improve closing state adjustment efficiency compared to using it at the upper part, leading to a substantial reduction in axial force on the steel beam. Furthermore, crane weight has a greater impact on internal forces in sub-segment cantilever assembly method than in whole lifting method. This study provides valuable insights for process design guidance in constructing this type of bridge, including proposing a temporary articulation device at closing ports to mitigate adverse influences from bridge floor cranes on bending moments at the steel beam root.

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  • 收稿日期:2024-05-14
  • 最后修改日期:2024-08-30
  • 录用日期:2024-09-29
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